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Morphological communication: exploiting coupled dynamics in a complex mechanical structure to achieve locomotion

John Rieffel, Francisco J. Valero‐Cuevas, Hod Lipson

发表年份
2009
引用次数
103

摘要

Traditional engineering approaches strive to avoid, or actively suppress, nonlinear dynamic coupling among components. Biological systems, in contrast, are often rife with these dynamics. Could there be, in some cases, a benefit to high degrees of dynamical coupling? Here we present a distributed robotic control scheme inspired by the biological phenomenon of tensegrity-based mechanotransduction. This emergence of morphology-as-information-conduit or 'morphological communication', enabled by time-sensitive spiking neural networks, presents a new paradigm for the decentralized control of large, coupled, modular systems. These results significantly bolster, both in magnitude and in form, the idea of morphological computation in robotic control. Furthermore, they lend further credence to ideas of embodied anatomical computation in biological systems, on scales ranging from cellular structures up to the tendinous networks of the human hand.

关键词

Modular designComputer scienceCoupling (piping)ComputationTensegrityDistributed computingLiving systemsNonlinear systemSynchronization (alternating current)Biological system

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